A wooden box beam is fabricated from four boards, which are fastened together with nails, as shown in Figure. The nails are installed at a spacing of (s = 125 mm), and each nail can provide a resistance force of (500 N). In service, the box beam will be installed so that bending occurs about the z axis. Determine the maximum shear force (V) that can be supported by the box beam based on the shear capacity of the nailed connections. Use l = 293750 mm4. First moment of area *Q:= 687,500 mm3
A wooden box beam is fabricated from four boards, which are fastened together with nails, as shown in Figure. The nails are installed at a spacing of (s = 125 mm), and each nail can provide a resistance force of (500 N). In service, the box beam will be installed so that bending occurs about the z axis. Determine the maximum shear force (V) that can be supported by the box beam based on the shear capacity of the nailed connections. Use l = 293750 mm4. First moment of area *Q:= 687,500 mm3
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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Transcribed Image Text:A wooden box beam is fabricated from four boards, which are fastened together
with nails, as shown in Figure. The nails are installed at a spacing of (s = 125 mm),
and each nail can provide a resistance force of (500 N). In service, the box beam
will be installed so that bending occurs about the z axis. Determine the maximum
shear force (V) that can be supported by the box beam based on the shear
capacity of the nailed connections. Use l = 293750 mm4. First moment of area
* Q:= 687,500 mm3
25 mm
250 mm
25 mm
40 mm
120 mm
40 mm
4.0 kN O
4.4 kN
3.42 kN
8.0 kN O
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